Lab 6 Oscillators & 7 Voltage Regulators Part 1 Design a phase-shift oscillator for a frequency of 800 Hz. The capacitor

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Lab 6 Oscillators & 7 Voltage Regulators Part 1 Design a phase-shift oscillator for a frequency of 800 Hz. The capacitor

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Lab 6 Oscillators 7 Voltage Regulators Part 1 Design A Phase Shift Oscillator For A Frequency Of 800 Hz The Capacitor 1
Lab 6 Oscillators 7 Voltage Regulators Part 1 Design A Phase Shift Oscillator For A Frequency Of 800 Hz The Capacitor 1 (43.69 KiB) Viewed 67 times
Lab 6 Oscillators 7 Voltage Regulators Part 1 Design A Phase Shift Oscillator For A Frequency Of 800 Hz The Capacitor 2
Lab 6 Oscillators 7 Voltage Regulators Part 1 Design A Phase Shift Oscillator For A Frequency Of 800 Hz The Capacitor 2 (53.47 KiB) Viewed 67 times
Lab 6 Oscillators 7 Voltage Regulators Part 1 Design A Phase Shift Oscillator For A Frequency Of 800 Hz The Capacitor 3
Lab 6 Oscillators 7 Voltage Regulators Part 1 Design A Phase Shift Oscillator For A Frequency Of 800 Hz The Capacitor 3 (43.02 KiB) Viewed 67 times
Lab 6 Oscillators 7 Voltage Regulators Part 1 Design A Phase Shift Oscillator For A Frequency Of 800 Hz The Capacitor 4
Lab 6 Oscillators 7 Voltage Regulators Part 1 Design A Phase Shift Oscillator For A Frequency Of 800 Hz The Capacitor 4 (50.59 KiB) Viewed 67 times
Lab 6 Oscillators 7 Voltage Regulators Part 1 Design A Phase Shift Oscillator For A Frequency Of 800 Hz The Capacitor 5
Lab 6 Oscillators 7 Voltage Regulators Part 1 Design A Phase Shift Oscillator For A Frequency Of 800 Hz The Capacitor 5 (42.14 KiB) Viewed 67 times
Lab 6 Oscillators 7 Voltage Regulators Part 1 Design A Phase Shift Oscillator For A Frequency Of 800 Hz The Capacitor 6
Lab 6 Oscillators 7 Voltage Regulators Part 1 Design A Phase Shift Oscillator For A Frequency Of 800 Hz The Capacitor 6 (49.8 KiB) Viewed 67 times
Lab 6 Oscillators 7 Voltage Regulators Part 1 Design A Phase Shift Oscillator For A Frequency Of 800 Hz The Capacitor 7
Lab 6 Oscillators 7 Voltage Regulators Part 1 Design A Phase Shift Oscillator For A Frequency Of 800 Hz The Capacitor 7 (43.86 KiB) Viewed 67 times
Lab 6 Oscillators 7 Voltage Regulators Part 1 Design A Phase Shift Oscillator For A Frequency Of 800 Hz The Capacitor 8
Lab 6 Oscillators 7 Voltage Regulators Part 1 Design A Phase Shift Oscillator For A Frequency Of 800 Hz The Capacitor 8 (41.3 KiB) Viewed 67 times
Lab 6 Oscillators 7 Voltage Regulators Part 1 Design A Phase Shift Oscillator For A Frequency Of 800 Hz The Capacitor 9
Lab 6 Oscillators 7 Voltage Regulators Part 1 Design A Phase Shift Oscillator For A Frequency Of 800 Hz The Capacitor 9 (42.66 KiB) Viewed 67 times
Lab 6 Oscillators 7 Voltage Regulators Part 1 Design A Phase Shift Oscillator For A Frequency Of 800 Hz The Capacitor 10
Lab 6 Oscillators 7 Voltage Regulators Part 1 Design A Phase Shift Oscillator For A Frequency Of 800 Hz The Capacitor 10 (28.08 KiB) Viewed 67 times
Lab 6 Oscillators & 7 Voltage Regulators Part 1 Design a phase-shift oscillator for a frequency of 800 Hz. The capacitors are to be 10 nF. Start by solving for the resistors needed in the feedback circuit: 1 1 R= 21V6f, C2176(800 Hz)(10 nF) Calculate the feedback resistor needed: R;= 29R = 59 49 2010 Kay Space CI 카 + 02 U1 ! Sto ONAM VIRTUAL R2 AN V

Multisim 14 with 51 to start the simulation (close and open 51). The frequency determined by Multisim is 791 Hz. How to find the Tektronic Oscilloscope: Com hay RI w 2000 C2 Key Space +2 3+ = U1 1001 son RE STO OMET_VIRTUAL RI Sono RA 020 2010 File VI TV How to make the selections on the Tektronix oscilloscope: Click Measure, choose Source (CH1) and Type is (Frequency) Under the Vertical Section change the volts/div to the parameter value on the oscilloscope screenshot Under the Sec/Div section adjust the time to the parameter value on the oscilloscope screenshot

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Part II JFET Stabilized Wien Bridge Oscillator The Wien Bridge Oscillator requires automatic gain control (AGC) to work properly. Field- effect transistors are frequently used for AGC circuits because they can be used as voltage- controlled resistors for small, applied voltages. Construct the below JFET Stabilized Wien Bridge Oscillator Compute the expected frequency of oscillation from the equation: fr = 1/2*RC RA w SONO RI ska R2 SATO DEALEN DODE VENTUR C) RS SATORO C2 HE Ton RS w 16MO RE 160 CI beton

Take a screenshot immediately after running the simulation to capture the signal prior to it stabilizing: SHO Take a screenshot once the two signals stabilize 31680

Part III Variable Power Supply 1.75 V - 13 V 1. Construct the attached circuit using Multisim 2. Run the simulation 3. The LED will turn on when the current through it exceeds 5mA 4. Double click the oscilloscope to view the de voltage output 5. Adjust this potentiometer's value while the simulation is running 6. The value of the potentiometer controls the output voltage of the regulator 7. Take screenshots of the oscilloscope displaying the different de voltage levels as the potentiometer is adjusted. (Show at least 3 different de voltage levels) TO DS www 01 T1 U1 LMIK 10:1 3N245 RI R2 10 RS SINO V1 ci 2007 R4 SINO 120 Vrms SOHE O" 1080 Kaya 77 LEDI PO

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